Analisis Perbandingan Penentuan Hiposentrum Menggunakan Metode Grid Search, Geiger, dan Random Search: Studi Kasus pada Letusan Gunung Sinabung 2017
Abstract
Keywords
Full Text:
PDFReferences
Arimuko, A., dkk. (2019). Model Kecepatan 1-D Gelombang P dan Gelombang S dari Data Hasil Relokasi Hiposenter di Wilayah Gunung Sinabung. Jurnal Meteorologi Klimatologi dan Geofisika. 5 (3): 72-79.
Bormann, P. (2002). Global 1-D Earth models. GeoForschungsZentrum Potsdam, Telegrafenberg, D-14473 Potsdam, Germany.
Grandis, H. (2009). Pengantar Pemodelan Inversi. Himpunan Ahli Geofisika Indonesia. Jakarta 12540, Indonesia.
Geiger, L. (1910). Herdbestimmung bei Erdbeben aus den Ankunftszeiten. Nachrichten von der Königlichen Gesellschaft der Wissenschaften zu Göttingen, MathematischPhysikalische Klasse, 331-349. (1912 translated to English by F.W.L. Peebles and A.H.Corey: Probability method for the determination of earthquake epicenters from the arrival time only. Bulletin St. Louis University 8, 60-71).
Kanamori, H. (1972). Mechanism of Tsunami Earthquakes. Physics of the Earth Planetary Interiors. 11, pp. 312-332.
Nishi, K. (2005). Hypocenter Calculation Software GAD (Geiger’s method with Adaptive Damping). Silver Expert JICA Indonesia version 1.
Rodi, W. dan Toksoz, M. N. (2000). GridSearch Techniques for Seismic Event Location. Conference paper. Massachusetts Institute of Technology. Cambridge Earth Resources Lab.
Sambridge, M. dan Gallagher, K. (1993). Earthquake Hypocenter Location Using Genetic Algorithms. Bulletin Seismological Society of America. 83 (5): 1467-1491.
DOI: https://doi.org/10.37058/diffraction.v1i2.1290
Refbacks
- There are currently no refbacks.
Copyright (c) 2020 DIFFRACTION
Jurnal ini terindeks oleh:
Pendidikan Fisika FKIP Univesitas Siliwangi
Gedung FKIP lantai 1, Jl. Siliwangi No. 24, Kota Tasikmalaya - 46115
email: diffraction.fisika@unsil.ac.id
DIFFRACTION: Journal for Physics Education and Applied Physics
terlisensi creative commons attribution-share alike 4.0 international